Material taking mechanism for toy materials
By introducing drilling, pressing, and slag blowing mechanisms into toy processing, the problem of uneven EVA sheet molding was solved, and efficient utilization of the sheet material was achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SOMETHING HIGH ELECTRIC XIAMEN CO LTD
- Filing Date
- 2025-04-30
- Publication Date
- 2026-05-15
AI Technical Summary
In traditional toy manufacturing, EVA sheets are not shaped evenly, resulting in low sheet utilization.
The system employs a drilling mechanism, a pressing mechanism, a slag blowing mechanism, and a shifting mechanism. The drilling mechanism completes the shaping of the EVA sheet, the pressing mechanism clamps the sheet, the slag blowing mechanism blows away the debris, and the shifting mechanism accurately positions the sheet, thereby improving the utilization rate of the sheet.
This achieves efficient utilization of EVA sheets, ensures accurate molding, and improves the utilization rate of the sheets.
Smart Images

Figure CN224239823U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toy processing, and in particular to a material feeding mechanism for toys. Background Technology
[0002] like Figure 1 As shown, a children's toy 200 has a countersunk hole 201 in its middle part and is made of EVA material. The toy 200 is made by drilling the countersunk hole 201 and polishing the shape after taking a shape from the EVA sheet. In the traditional shaping process, the EVA sheet is placed on a fixed frame and the toy semi-finished product is drilled from the EVA sheet by moving the drilling mechanism. This traditional shaping method results in uneven shaping and low material utilization. Utility Model Content
[0003] The purpose of this invention is to provide a material handling mechanism for toys with high board utilization.
[0004] To achieve the above objectives, the technical solution of this utility model is:
[0005] This utility model is a material handling mechanism for toys, including a drilling mechanism, a pressing mechanism, a slag blowing mechanism, a shifting mechanism, and a frame; the drilling mechanism, pressing mechanism, slag blowing mechanism, and shifting mechanism are all mounted on the frame, the pressing mechanism is located between the drilling mechanism and the shifting mechanism, the pressing mechanism is used to press the board, and the slag blowing mechanism is located between the drilling mechanism and the shifting mechanism, and is used to blow off the board debris;
[0006] The drilling mechanism includes a molding platform, a molding guide rail, a molding advance / retractable cylinder, a molding motor, a molding die, and a molding pulley assembly. The molding guide rail is mounted on the frame, and the molding platform slides on the molding guide rail. The cylinder body of the molding advance / retractable cylinder is mounted on the frame, and the piston rod end of the molding advance / retractable cylinder is connected to the molding platform and can drive the molding platform to move back and forth along the molding guide rail. The molding motor is mounted on the molding platform, and the output shaft of the molding motor is connected to the molding die through the molding pulley assembly. The molding die has an air inlet hole, which is connected to an external air source. The pressing material... The mechanism includes a pressing cylinder and a pressing plate. The cylinder body of the pressing cylinder is mounted on the frame. The piston rod end of the pressing cylinder is connected to the inner end of the pressing plate. The outer end of the pressing plate presses against the translation mechanism. The through hole on the pressing plate is fitted onto the forming die. The slag blowing mechanism includes a slag blowing frame, a slag blowing cylinder, a slag blowing nozzle, and a slag blowing plate. The lower end of the slag blowing frame is fixed to the bottom of the frame. The cylinder body of the slag blowing cylinder is mounted on the top of the slag blowing frame. One end of the slag blowing plate is mounted on the piston rod end of the slag blowing cylinder. The slag blowing nozzle is mounted on the other end of the slag blowing plate and is connected to an external air source.
[0007] The shifting mechanism includes a translation mechanism, a translation frame, a translation guide rod, a longitudinal mechanism, a longitudinal frame, and a longitudinal guide rail. Both the translation mechanism and the longitudinal mechanism are installed on the top of the frame. The translation frame slides on the translation guide rod, which is horizontally installed on the frame. The translation mechanism is connected to the translation frame and drives the translation frame to move back and forth along the translation guide rod. The longitudinal frame slides on the longitudinal guide rail, which is vertically installed on the translation frame. The longitudinal mechanism is connected to the longitudinal frame and drives the longitudinal frame to move up and down along the longitudinal guide rail.
[0008] Both the translation mechanism and the longitudinal movement mechanism are traditional belt lifting mechanisms; the translation mechanism includes a translation motor and a translation pulley set, the translation motor is mounted on the top of the frame, and the output shaft of the translation motor is connected to the translation frame through the translation pulley set.
[0009] After adopting the above solution, since this utility model includes a drilling mechanism, a pressing mechanism, a slag blowing mechanism, and a shifting mechanism, the EVA sheet is fixed on the shifting mechanism, the pressing mechanism presses down on the EVA sheet, the drilling mechanism completes the shaping of the EVA sheet, and the shifting mechanism shifts the EVA sheet. The moving position is accurate, the sheet utilization rate is high, and the drilling mechanism drills the EVA sheet again, so that semi-finished products can be continuously obtained.
[0010] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description
[0011] Figure 1 It is an isometric drawing of the product;
[0012] Figure 2 This is an isometric drawing of this utility model;
[0013] Figure 3 This is an isometric drawing of the displacement mechanism of this utility model.
[0014] Figure 4 This is an isometric drawing of the drilling mechanism, pressing mechanism, and slag blowing mechanism of this utility model. Detailed Implementation
[0015] like Figures 2-4 As shown, this utility model is a material handling mechanism for toys, including a drilling mechanism 1, a pressing mechanism 2, a slag blowing mechanism 3, a shifting mechanism 4, and a frame 5.
[0016] The drilling mechanism 1, pressing mechanism 2, slag blowing mechanism 3, and shifting mechanism 4 are all mounted on the frame 5. The pressing mechanism 2 is located between the drilling mechanism 1 and the shifting mechanism 4. The pressing mechanism 2 is used to press the plate 100. The slag blowing mechanism 3 is located between the drilling mechanism 1 and the shifting mechanism 4. It is used to blow off the residue of the plate 100.
[0017] The drilling mechanism 1 includes a drilling platform 11, a drilling guide rail 12, a drilling advance / retreat cylinder 13, a drilling motor 14, a drilling die 15, and a drilling pulley assembly 16. The drilling guide rail 12 is mounted on the frame 5, and the drilling platform 11 is slidably connected to the drilling guide rail 12. The cylinder body of the drilling advance / retreat cylinder 13 is mounted on the frame 5. The piston rod end of the drilling advance / retreat cylinder 13 is connected to the drilling platform 11 and can drive the drilling platform 11 to move back and forth along the drilling guide rail 12. The drilling motor 14 is mounted on the drilling platform 11, and the output shaft of the drilling motor 14 is connected to the drilling die 15 through the drilling pulley assembly 16. The drilling die 15 has an air inlet 151, which is connected to an external air source.
[0018] The pressing mechanism 2 includes a pressing cylinder 21 and a pressing plate 22. The cylinder body of the pressing cylinder 21 is mounted on the frame 5. The piston rod end of the pressing cylinder 21 is connected to the inner end of the pressing plate 22. The outer end of the pressing plate 22 presses against the translation mechanism 4. The through hole 221 on the pressing plate 22 is gap-fitted onto the forming die 15.
[0019] The slag blowing mechanism 3 includes a slag blowing frame 31, a slag blowing cylinder 32, a slag blowing nozzle 33, and a slag blowing plate 34. The lower end of the slag blowing frame 31 is fixed to the bottom of the frame 5. The cylinder body of the slag blowing cylinder 32 is installed on the top of the slag blowing frame 31. One end of the slag blowing plate 34 is installed on the piston rod end of the slag blowing cylinder 32. The slag blowing nozzle 33 is installed on the other end of the slag blowing plate 34 and is connected to an external air source.
[0020] The shifting mechanism 4 includes a translation mechanism 41, a translation frame 42, a translation guide rod 43, a longitudinal shift mechanism 44, a longitudinal shift frame 45, and a longitudinal shift guide rail 46. The translation mechanism 41 and the longitudinal shift mechanism 44 are both installed on the top of the frame 5. The translation frame 42 is slidably connected to the translation guide rod 43, which is horizontally installed on the frame 5. The translation mechanism 41 is connected to the translation frame 42 and drives the translation frame 42 to move back and forth along the translation guide rod 43. The longitudinal shift frame 45 is slidably connected to the longitudinal shift guide rail 46, which is vertically installed on the translation frame 42. The longitudinal shift mechanism 44 is connected to the longitudinal shift frame 45 and drives the longitudinal shift frame 45 to move up and down along the longitudinal shift guide rail 46.
[0021] Both the translation mechanism 41 and the longitudinal movement mechanism 44 are conventional belt lifting mechanisms. The translation mechanism 41 includes a translation motor 411 and a translation pulley set 412. The translation motor 411 is mounted on the top of the frame 5, and the output shaft of the translation motor 411 is connected to the translation frame 42 through the translation pulley set 412.
[0022] The working principle of this utility model:
[0023] The sheet 100 is placed in the longitudinal frame 45 of the shifting mechanism 4. The sheet 100 in the longitudinal frame 45 is moved in the X and Y directions by the translation mechanism 41 and the longitudinal mechanism 44. After reaching the corresponding coordinate, the molding motor 14 of the drilling mechanism 1 drives the molding die 15 to rotate. The molding advance and retreat cylinder 13 drives the molding motor 14 to move forward and mold the sheet 100 at the corresponding coordinate position. After the molding is completed, the external air source of the molding die 15 blows air into the molding die 15 through the air inlet 151 of the molding die 15, blowing out the semi-finished product in the molding die 15 and transferring it to the next process. After the molding motor 14 retracts to the position, the slag blowing mechanism 3 moves to the hole in the sheet 100 where the molding was just completed and blows air into the residue inside.
[0024] The above description is merely a preferred embodiment of the present utility model, and therefore cannot be used to limit the scope of the present utility model. All equivalent changes and modifications made in accordance with the scope of the patent application and the contents of the specification of the present utility model should still fall within the scope of the patent of the present utility model.
Claims
1. A material feeding mechanism for toys, characterized in that: It includes a drilling mechanism, a pressing mechanism, a slag blowing mechanism, a shifting mechanism, and a frame; the drilling mechanism, pressing mechanism, slag blowing mechanism, and shifting mechanism are all mounted on the frame, the pressing mechanism is located between the drilling mechanism and the shifting mechanism, the pressing mechanism is used to press the plate, and the slag blowing mechanism is located between the drilling mechanism and the shifting mechanism, and is used to blow off the plate debris; The drilling mechanism includes a molding platform, a molding guide rail, a molding advance and retreat cylinder, a molding motor, a molding die, and a molding pulley assembly. The molding guide rail is mounted on the frame, and the molding platform slides on the molding guide rail. The cylinder body of the molding advance and retreat cylinder is mounted on the frame. The piston rod end of the molding advance and retreat cylinder is connected to the molding platform and can drive the molding platform to move back and forth along the molding guide rail. The molding motor is mounted on the molding platform, and the output shaft of the molding motor is connected to the molding die through the molding pulley assembly. The molding die has an air inlet hole, which is connected to an external air source.
2. The material feeding mechanism for toys according to claim 1, characterized in that: The pressing mechanism includes a pressing cylinder and a pressing plate. The cylinder body of the pressing cylinder is mounted on the frame. The piston rod end of the pressing cylinder is connected to the inner end of the pressing plate. The outer end of the pressing plate presses against the translation mechanism. The through hole on the pressing plate is fitted onto the forming die.
3. The material feeding mechanism for toys according to claim 1, characterized in that: The slag blowing mechanism includes a slag blowing frame, a slag blowing cylinder, a slag blowing nozzle, and a slag blowing plate. The lower end of the slag blowing frame is fixed to the bottom of the frame. The cylinder body of the slag blowing cylinder is installed on the top of the slag blowing frame. One end of the slag blowing plate is installed on the piston rod end of the slag blowing cylinder. The slag blowing nozzle is installed on the other end of the slag blowing plate and is connected to an external air source.
4. The material feeding mechanism for toys according to claim 1, characterized in that: The shifting mechanism includes a translation mechanism, a translation frame, a translation guide rod, a longitudinal mechanism, a longitudinal frame, and a longitudinal guide rail. Both the translation mechanism and the longitudinal mechanism are installed on the top of the frame. The translation frame slides on the translation guide rod, which is horizontally installed on the frame. The translation mechanism is connected to the translation frame and drives the translation frame to move back and forth along the translation guide rod. The longitudinal frame slides on the longitudinal guide rail, which is vertically installed on the translation frame. The longitudinal mechanism is connected to the longitudinal frame and drives the longitudinal frame to move up and down along the longitudinal guide rail.
5. The material feeding mechanism for toys according to claim 4, characterized in that: Both the translation mechanism and the longitudinal movement mechanism are traditional belt lifting mechanisms; the translation mechanism includes a translation motor and a translation pulley set, the translation motor is mounted on the top of the frame, and the output shaft of the translation motor is connected to the translation frame through the translation pulley set.